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Study of optical Tamm states based on the phase properties of one-dimensional photonic crystals

机译:基于一维光子晶体相位特性的光学Tamm态研究

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摘要

We demonstrate the physical mechanism of optical Tamm states using the phase properties of the photonic crystals. Based on such mechanism, we propose an efficient way that can precisely produce optical Tamm states at specific frequencies. Moreover, we show that dielectric photonic crystals and single-negative materials can be effectively connected through their reflection phase. Two kinds of one-dimensional dielectric photonic crystals with different single-negative characteristics are designed and repeated alternately to construct a superlattice structure. The band structures and the transmission spectra of this superlattice show that multiple optical Tamm states arise and these Tamm states are coupled with each other to form transmission bands. A special zero-effective-phase gap can also be observed in such superlattice.
机译:我们演示了使用光子晶体的相位特性光学Tamm态的物理机制。基于这种机制,我们提出了一种可以在特定频率下精确产生光学Tamm态的有效方法。此外,我们表明介电质光子晶体和单负材料可以通过它们的反射相有效连接。设计了两种具有不同单负特性的一维介电光子晶体,并交替重复构建超晶格结构。该超晶格的能带结构和透射光谱表明,出现了多个光学Tamm态,并且这些Tamm态相互耦合形成透射带。在这种超晶格中也可以观察到特殊的零有效相位间隙。

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